Electrical control cabinet convenient for electrical element installation
By setting up installation columns and guide columns in the electrical control cabinet and equipped with slidable installation components and locking parts, the inconvenience of installation and maintenance of electrical components in the prior art is solved, and efficient and safe installation and maintenance outside the cabinet are achieved.
Patent Information
- Application Number
- CN202510656585.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-21
- Publication Date
- 2025-07-22
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The components in existing electrical control cabinets are inconvenient to install and repair, especially when inefficient when carried out in a small space.
Installation columns and guide columns are provided in the electrical control cabinet, equipped with slidable installation components and locking parts, allowing operators to install and maintain electrical components outside the cabinet, and improve installation efficiency and safety through modular design and insulation layers.
It realizes the installation and maintenance of electrical components quickly and simply outside the cabinet, improves installation efficiency, avoids space waste and electrical contact risks, and enhances the flexibility and practicality of the device.
Smart Images

Figure CN120357302A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electrical control cabinets, and more specifically, to an electrical control cabinet facilitating the installation of electrical components. Background Art
[0002] An electrical control cabinet is the end - level equipment of a power distribution system. In the existing electrical control cabinet, there are several mounting plates, and the mounting plates are provided with grooves or connection holes for mounting components. When a component in the electrical control cabinet fails or is damaged and needs to be repaired, the maintenance personnel can only open the cabinet door to check and repair the components in the electrical control cabinet.
[0003] When installing electrical components, the operator needs to enter the cabinet for installation. Generally, the space inside the electrical control cabinet is relatively narrow, and it is inconvenient for the operator to install inside the cabinet, which affects the installation efficiency of the power distribution cabinet. Summary of the Invention
[0004] The present invention provides an electrical control cabinet facilitating the installation of electrical components, which can overcome certain or some defects of the prior art.
[0005] According to an electrical control cabinet facilitating the installation of electrical components of the present invention, it includes a control cabinet main body. An installation cavity is formed inside the control cabinet main body. Inside the installation cavity, there are multiple installation columns and guide columns extending along the direction of the cabinet door. A slidable installation component for installing electrical components is provided between the multiple installation columns and guide columns;
[0006] A resilient member is provided between the installation cavity and the installation component. The resilient member is used to provide a tendency to keep the installation component moving towards the cabinet door direction. A locking member is slidably provided at the guide column, and the locking member is used to limit the installation component.
[0007] In an electrical control cabinet facilitating the installation of electrical components of the present disclosure, by providing installation columns and guide columns in the installation cavity of the electrical control cabinet, the installation component can extend and slide along the direction of the cabinet door in the installation cavity. The operator can perform the installation work of electrical components outside the cabinet body, avoiding the operation inside the cabinet and improving the installation efficiency.
[0008] It can be understood that the slidable setting of the installation component makes the maintenance and replacement of electrical components more convenient. When it is necessary to repair or replace a component, the operator can easily slide out the installation component for quick maintenance.
[0009] It can be understood that after the installation of electrical components is completed, by pushing the locking member to slide along the guide column, the installation component is pushed into the interior of the installation cavity and limited, thereby completing the installation of electrical components. The operation is simple and fast.
[0010] Preferably, the installation component includes a first installation module, a second installation module, and a third installation module. The first installation module is rectangular, the second installation module and the third installation module are L-shaped, and the first installation module, the second installation module, and the third installation module are integrally configured in a square shape.
[0011] The installation component consists of three modules, namely the first installation module, the second installation module, and the third installation module. This modular design enables the installation component to be flexibly combined and adjusted as needed.
[0012] Specifically, as shown in the figures, the first installation module, the second installation module, and the third installation module are all independently arranged, enabling the operator to install different modules separately according to requirements when installing electrical components. In addition, when installing electrical components on any one of the first installation module, the second installation module, and the third installation module, it can be pulled out to the outside of the cabinet for installation alone without interfering with the normal operation of the existing modules.
[0013] It can be understood that through the combination of the L-shaped module and the rectangular module, the space inside the electrical control cabinet can be better utilized to avoid space waste.
[0014] It can be understood that by correspondingly arranging the circuits of the same module, as shown in the figure, when installing or maintaining other modules, it will not interfere with other modules. Compared with the circuit crossing that occurs after the installation of existing electrical components, the present disclosure improves the practicability and flexibility of the device.
[0015] Preferably, a plurality of through slots are formed vertically at the first installation module, the second installation module, and the third installation module. Mounting seats are provided in the through slots. Each mounting seat includes two adjusting members slidably disposed at the mounting seat, and the two adjusting members are used for cooperating and connecting with electrical components.
[0016] By providing two slidable adjusting members on the mounting seat, the mounting seat can be adjusted according to the specific dimensions of the electrical components to adapt to different sizes and types of electrical components, improving the applicable range and versatility of the mounting seat.
[0017] Preferably, an annular groove is formed at the end of the guide post away from the cabinet door. The locking member includes a sleeve slidably disposed on the guide post. A plurality of grooves are formed circumferentially on the outer wall of the sleeve. Steel balls are provided in the plurality of grooves. A sliding member is slidably disposed on the outer wall of the sleeve. An inner cavity is formed on the inner wall of the sliding member, and a limiting portion corresponding to the groove is formed on the inner wall of the inner cavity. The limiting portion is used to squeeze the steel balls to realize the limitation of the sleeve on the guide post.
[0018] The precise limit of the installation component on the guiding column is achieved by the cooperation of the annular groove on the guiding column and the steel balls in the sleeve, and through the blocking effect of the steel balls 530 in the annular groove.
[0019] Preferably, a blocking portion is formed at one end of the sleeve away from the installation component, and the blocking portion is used to block the sliding member.
[0020] With the above structure, the sliding member can move stably on the sleeve, preventing the sliding member from detaching from the sleeve.
[0021] Preferably, an external thread is formed on the outer wall of one end of the sleeve away from the blocking portion, and an internal thread that mates with the external thread is formed at the position of the sliding member.
[0022] With the above structure, after the sleeve squeezes the steel balls, the sliding member can be connected to the sleeve, improving the stability of the sliding member.
[0023] Preferably, mounting openings corresponding to the first mounting module, the second mounting module, and the third mounting module are formed on the side wall of the main body of the control cabinet. The mounting openings extend along the direction of the cabinet door. Cable organizers are slidably provided in the mounting openings, and through holes for power cables to pass through are provided at the cable organizers. The cable organizers are respectively provided on the side walls of the corresponding first mounting module, second mounting module, and third mounting module.
[0024] With the above structure, the circuits at the first mounting module, the second mounting module, and the third mounting module are separately led out through the corresponding cable organizers. When repairing or installing the first mounting module, the second mounting module, and the third mounting module, the cable organizers can also move together with the corresponding first mounting module or second mounting module or third mounting module, so that the circuits of the electrical components on the first mounting module or second mounting module or third mounting module will not be affected, improving the work efficiency.
[0025] Preferably, pull handles are provided at the first mounting module, the second mounting module, and the third mounting module, and an insulating layer is provided at the pull handles.
[0026] With the above structure, the operator can conveniently hold and move the corresponding mounting module, improving the work efficiency. The setting of the insulating layer improves the use safety of the operator.
[0027] Preferably, insulating layers are wrapped around the outer walls of the first mounting module, the second mounting module, and the third mounting module.
[0028] Through the setting of the insulating layer, an electrical isolation layer is provided, preventing contact between electrical components and the cabinet body or other electrical components, and reducing the risks of short circuits and electric shocks. Description of the Drawings
[0029] Figure 1It is a schematic diagram of the overall structure of an electrical control cabinet facilitating the installation of electrical components.
[0030] Figure 2 It is a schematic diagram of the overall side-sectional structure of an electrical control cabinet facilitating the installation of electrical components.
[0031] Figure 3 It is a schematic diagram of the installation component structure of an electrical control cabinet facilitating the installation of electrical components.
[0032] Figure 4 It is a schematic diagram of the sectional structure of the installation component of an electrical control cabinet facilitating the installation of electrical components.
[0033] Figure 5 It is Figure 4 a partial enlarged schematic diagram at position A in
[0034] Figure 6 It is a schematic diagram of the installation component of an electrical control cabinet facilitating the installation of electrical components at one state.
[0035] Figure 7 It is a schematic diagram of the installation component of an electrical control cabinet facilitating the installation of electrical components at another state.
[0036] 110, control cabinet main body; 120, mounting post; 130, installation component; 210, resilient member; 220, installation opening; 230, wire organizer; 310, first installation module; 320, second installation module; 330, third installation module; 340, through slot; 350, mounting seat; 360, guiding post; 370, locking member; 510, sleeve; 511, groove; 512, blocking portion; 520, sliding member; 521, inner cavity; 522, limiting portion; 530, steel ball; 540, annular groove. Specific embodiments
[0037] To further understand the content of the present invention, the present invention will be described in detail in combination with embodiments. It should be understood that the embodiments are only for explaining the present invention rather than limiting it.
[0038] Embodiment 1
[0039] Please refer to Figures 1 - 7 , this embodiment provides an electrical control cabinet facilitating the installation of electrical components, which includes a control cabinet main body 110. An installation cavity is formed inside the control cabinet main body 110. A plurality of mounting posts 120 and guiding posts 360 extending along the direction of the cabinet door are arranged in the installation cavity. An installation component 130 for installing electrical components is slidably arranged between the plurality of mounting posts 120 and guiding posts 360;
[0040] A resilient member 210 is provided between the installation cavity and the installation component 130. The resilient member 210 is used to provide a tendency to keep the installation component 130 moving towards the cabinet door. A locking member 370 is slidably provided at the guiding column 360, and the locking member 370 is used to limit the installation component 130.
[0041] An electrical control cabinet facilitating the installation of electrical components according to the present disclosure is provided with an installation post 120 and a guiding column 360 in the installation cavity of the electrical control cabinet, enabling the installation component 130 to extend and slide along the cabinet door direction in the installation cavity. Operators can perform the installation work of electrical components outside the cabinet body, avoiding the need to enter the cabinet for operation and improving the installation efficiency.
[0042] It can be understood that the slidable setting of the installation component 130 makes the maintenance and replacement of electrical components more convenient. When maintenance or replacement of components is required, operators can easily slide out the installation component 130 for quick maintenance.
[0043] It can be understood that after the installation of electrical components is completed, by pushing the locking member 370 to slide along the guiding column 360, the installation component 130 is pushed into the interior of the installation cavity and limited, thus completing the installation of electrical components, with simple and fast operation.
[0044] In this embodiment, the installation component 130 includes a first installation module 310, a second installation module 320, and a third installation module 330. The first installation module 310 is arranged in a rectangular shape, and the second installation module 320 and the third installation module 330 are arranged in an L shape. The first installation module 310, the second installation module 320, and the third installation module 330 are integrally arranged in a square shape.
[0045] The installation component 130 consists of three modules, namely the first installation module 310, the second installation module 320, and the third installation module 330. This modular design enables the installation component 130 to be flexibly combined and adjusted according to needs.
[0046] Specifically, as shown in Figure 1 、 Figure 6 and Figure 7 In the shown state, the first installation module 310, the second installation module 320, and the third installation module 330 are all independently arranged, enabling operators to install different modules separately according to requirements when installing electrical components. In addition, when installing electrical components on any one of the first installation module 310, the second installation module 320, and the third installation module 330, it can be pulled out to the outside of the cabinet body for installation alone without interfering with the normal operation of existing modules.
[0047] It can be understood that by combining the L-shaped module and the rectangular module, the space inside the electrical control cabinet can be better utilized, avoiding waste of space.
[0048] It can be understood that the circuits of the same module are arranged correspondingly, as shown in Figure 7 the state shown. When installing or maintaining other modules, it will not cause interference to other modules. Compared with the circuit crossing that occurs after the installation of existing electrical components, the present disclosure improves the practicability and flexibility of the device.
[0049] In this embodiment, a plurality of through slots 340 arranged vertically are formed at the first mounting module 310, the second mounting module 320, and the third mounting module 330. Mounting seats 350 are provided in the through slots 340. Each mounting seat 350 includes two adjusting members slidably provided at the mounting seat 350, and the two adjusting members are used for mating connection with electrical components.
[0050] By providing two slidable adjusting members on the mounting seat 350, the mounting seat 350 can be adjusted according to the specific dimensions of the electrical components to adapt to electrical components of different sizes and types, improving the application range and versatility of the mounting seat 350.
[0051] In this embodiment, a ring groove 540 is formed at one end of the guide post 360 away from the cabinet door. The locking member 370 includes a sleeve 510 slidably provided on the guide post 360. A plurality of grooves 511 are formed along the circumferential direction on the outer wall of the sleeve 510. Steel balls 530 are provided in the plurality of grooves 511. A sliding member 520 is slidably provided on the outer wall of the sleeve 510. An inner cavity 521 is formed on the inner wall of the sliding member 520. A limiting portion 522 corresponding to the groove 511 is formed on the inner wall of the inner cavity 521. The limiting portion 522 is used for squeezing the steel ball 530 to realize the limitation of the sleeve 510 at the guide post 360.
[0052] Through the cooperation of the ring groove 540 on the guide post 360 and the steel ball 530 in the sleeve 510, and through the positioning effect of the steel ball 530 in the ring groove 540, precise limitation of the mounting assembly 130 on the guide post 360 is realized.
[0053] In this embodiment, a blocking portion 512 is formed at one end of the sleeve 510 away from the mounting assembly 130, and the blocking portion 512 is used for blocking the sliding member 520.
[0054] Through the above structure, the sliding member 520 can move stably on the sleeve 510, avoiding the sliding member 520 from detaching from the sleeve 510.
[0055] In this embodiment, an external thread is formed on the outer wall of one end of the sleeve 510 away from the blocking portion 512, and an internal thread matching the external thread is formed at the sliding member 520.
[0056] With the above structure, after the casing 510 squeezes the steel balls 530, the slider 520 can be connected to the casing 510, improving the stability of the slider 520.
[0057] In this embodiment, mounting openings 220 corresponding to the first mounting module 310, the second mounting module 320, and the third mounting module 330 are formed on the side wall of the control cabinet main body 110. The mounting openings 220 extend along the direction of the cabinet door. Cable organizers 230 are slidably arranged in the mounting openings 220. The cable organizers 230 are provided with perforations for power cables to pass through. The cable organizers 230 are respectively arranged on the side walls of the corresponding first mounting module 310, second mounting module 320, and third mounting module 330.
[0058] With the above structure, the circuits at the first mounting module 310, the second mounting module 320, and the third mounting module 330 are separately led out to the corresponding cable organizers 230. When the first mounting module 310, the second mounting module 320, or the third mounting module 330 is being repaired or installed, the cable organizer 230 can also move with the corresponding first mounting module 310, second mounting module 320, or third mounting module 330, so that the circuits of the electrical components on the first mounting module 310, second mounting module 320, or third mounting module 330 are not affected, improving the work efficiency.
[0059] In this embodiment, pull handles are provided at the first mounting module 310, the second mounting module 320, and the third mounting module 330, and an insulating layer is provided at the pull handles.
[0060] With the above structure, the operator can conveniently hold and move the corresponding mounting module, improving the work efficiency. The setting of the insulating layer improves the safety of the operator during use.
[0061] In this embodiment, insulating layers are wrapped around the outer walls of the first mounting module 310, the second mounting module 320, and the third mounting module 330.
[0062] Through the setting of the insulating layer, an electrical isolation layer is provided, preventing contact between electrical components and the cabinet body or other electrical components, and reducing the risks of short circuits and electric shocks.
[0063] It is easily understandable that those skilled in the art can combine, split, recombine, etc. the embodiments of the present application based on one or several embodiments provided by the present application to obtain other embodiments, and these embodiments do not exceed the protection scope of the present application.
[0064] The above is a schematic description of the present invention and its implementation manners. This description is not restrictive. What is shown in the embodiments is only a part of the implementation manners of the present invention, and the actual structure is not limited thereto. Therefore, if those of ordinary skill in the art are inspired by it and, without departing from the gist of the present invention, creatively design structural manners and embodiments similar to this technical solution, they shall fall within the protection scope of the present invention.
Claims
1. An electrical control cabinet convenient for installing electrical components, comprising a control cabinet main body (110), and an installation cavity is formed inside the control cabinet main body (110), and is characterized in that: The installation cavity is provided with a plurality of installation posts (120) and guide posts (360) extending along the direction of the cabinet door. An installation component (130) for installing electrical components is slidably arranged between the plurality of installation posts (120) and guide posts (360). A resilient member (210) is arranged between the installation cavity and the installation component (130). The resilient member (210) is used to provide a tendency to keep the installation component (130) moving towards the cabinet door direction. A locking member (370) is slidably arranged at the guide post (360). The locking member (370) is used to limit the installation component (130).
2. An electric control cabinet facilitating the installation of electrical components according to claim 1, characterized in that: The installation component (130) includes a first installation module (310), a second installation module (320) and a third installation module (330). The first installation module (310) is arranged in a rectangular shape. The second installation module (320) and the third installation module (330) are arranged in an L shape. The first installation module (310), the second installation module (320) and the third installation module (330) are integrally arranged in a square shape.
3. An electric control cabinet facilitating the installation of electrical components according to claim 2, characterized in that: A plurality of through slots (340) arranged vertically are formed at the first installation module (310), the second installation module (320) and the third installation module (330). Installation seats (350) are arranged in the through slots (340). Each installation seat (350) includes two adjusting members slidably arranged at the installation seat (350). The two adjusting members are used to cooperate and connect with electrical components.
4. An electric control cabinet facilitating the installation of electrical components according to claim 1, characterized in that: An annular groove (540) is formed at one end of the guide post (360) away from the cabinet door. The locking member (370) includes a sleeve (510) slidably arranged at the guide post (360). A plurality of grooves (511) are formed along the circumferential direction of the outer wall of the sleeve (510). Steel balls (530) are arranged in the plurality of grooves (511). A sliding member (520) is slidably arranged on the outer wall of the sleeve (510). An inner cavity (521) is formed at the inner wall of the sliding member (520). A limiting portion (522) corresponding to the groove (511) is formed at the inner wall of the inner cavity (521). The limiting portion (522) is used to squeeze the steel ball (530) to realize the limitation of the sleeve (510) at the guide post (360).
5. The electric control cabinet convenient for installing electric components according to claim 4, characterized in that: A blocking portion (512) is formed at one end of the sleeve (510) away from the installation component (130). The blocking portion (512) is used to block the sliding member (520).
6. An electrical control cabinet facilitating the installation of electrical components according to claim 5, characterized in that: External threads are formed at the outer wall of one end of the sleeve (510) away from the blocking portion (512). Internal threads matching the external threads are formed at the sliding member (520).
7. An electrical control cabinet facilitating the installation of electrical components according to claim 2, characterized in that: Installation openings (220) corresponding to the first installation module (310), the second installation module (320) and the third installation module (330) are formed at the side wall of the control cabinet main body (110). The installation openings (220) extend along the direction of the cabinet door. Cable organizers (230) are slidably arranged in the installation openings (220). Through holes for power cables to pass through are arranged at the cable organizers (230). The cable organizers (230) are respectively arranged at the side walls of the corresponding first installation module (310), second installation module (320) and third installation module (330).
8. An electrical control cabinet facilitating the installation of electrical components according to claim 2, characterized in that: Pull handles are provided at the first mounting module (310), the second mounting module (320), and the third mounting module (330), and an insulating layer is provided at the pull handles.
9. An electrical control cabinet facilitating the installation of electrical components according to claim 1, characterized in that: Insulating layers are wrapped around the outer walls of the first mounting module (310), the second mounting module (320), and the third mounting module (330).